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Optical and Structural Properties of Proton-Exchanged Waveguides in Y-Cut ZnO:LiNbO 3

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Fabrication and characterisation of proton exchanged planar optical waveguides in Y-cut ZnO:LiNbO3 crystal using adipic acid as proton source are reported in this paper. These waveguides have a linear-step index profile with a surface index increase of 0.138 at the wavelength of 0.633 µ m. The activation energy Q and diffusion constant D 0 for the proton exchange process are characterised optically to be 95.32 KJ/mol and 9.61×109 µ m2/h. A critical thickness of about 2 µ m for proton exchanged y-cut ZnO:LiNbO3 waveguides is optically determined in our experiments. Surface damage is observed for those waveguides with layer thickness larger than this critical value. The strains in y-cut waveguides are measured by using double-crystal X-ray symmetric and asymmetric diffraction method. Based on the measured data, an explanation is given for the surface damage occurred on y-cut samples.
Title: Optical and Structural Properties of Proton-Exchanged Waveguides in Y-Cut ZnO:LiNbO 3
Description:
Fabrication and characterisation of proton exchanged planar optical waveguides in Y-cut ZnO:LiNbO3 crystal using adipic acid as proton source are reported in this paper.
These waveguides have a linear-step index profile with a surface index increase of 0.
138 at the wavelength of 0.
633 µ m.
The activation energy Q and diffusion constant D 0 for the proton exchange process are characterised optically to be 95.
32 KJ/mol and 9.
61×109 µ m2/h.
A critical thickness of about 2 µ m for proton exchanged y-cut ZnO:LiNbO3 waveguides is optically determined in our experiments.
Surface damage is observed for those waveguides with layer thickness larger than this critical value.
The strains in y-cut waveguides are measured by using double-crystal X-ray symmetric and asymmetric diffraction method.
Based on the measured data, an explanation is given for the surface damage occurred on y-cut samples.

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